Institute of Molecular Biology, Department of Biology, University of Oregon, Eugene, OR 97403, USA.
Institute of Neuroscience, Department of Biology, University of Oregon, Eugene, OR 97403, USA.
Development. 2022 Jun 15;149(12). doi: 10.1242/dev.200017. Epub 2022 Jun 16.
Motile cilia generate cell propulsion and extracellular fluid flows that are crucial for airway clearance, fertility and left-right patterning. Motility is powered by dynein arm complexes that are assembled in the cytoplasm then imported into the cilium. Studies in Chlamydomonas reinhardtii showed that ODA16 is a cofactor which promotes dynein arm import. Here, we demonstrate that the zebrafish homolog of ODA16, Daw1, facilitates the onset of robust cilia motility during development. Without Daw1, cilia showed markedly reduced motility during early development; however, motility subsequently increased to attain close to wild-type levels. Delayed motility onset led to differential effects on early and late cilia-dependent processes. Remarkably, abnormal body axis curves, which formed during the first day of development due to reduced cilia motility, self-corrected when motility later reached wild-type levels. Zebrafish larva therefore possess the ability to survey and correct body shape abnormalities. This work defines Daw1 as a factor which promotes the onset of timely cilia motility and can explain why human patients harboring DAW1 mutations exhibit significant laterality perturbations but mild airway and fertility complications.
纤毛的运动可推动细胞运动和细胞外液流动,这对气道清除、生育和左右模式形成至关重要。纤毛的运动由动力蛋白臂复合物提供动力,这些复合物在细胞质中组装,然后被导入纤毛。莱茵衣藻的研究表明,ODA16 是一种促进动力蛋白臂导入的辅助因子。在这里,我们证明了 ODA16 的斑马鱼同源物 Daw1 有助于在发育过程中启动强大的纤毛运动。没有 Daw1,纤毛在早期发育过程中的运动明显减少;然而,随后运动增加,接近野生型水平。运动起始的延迟导致对早期和晚期依赖纤毛的过程产生不同的影响。值得注意的是,由于纤毛运动减少,在发育的第一天形成的异常身体轴曲线,在运动后来达到野生型水平时自行纠正。因此,斑马鱼幼虫具有检测和纠正身体形状异常的能力。这项工作将 Daw1 定义为促进纤毛运动及时启动的因素,这可以解释为什么携带 DAW1 突变的人类患者表现出明显的左右侧偏性扰动,但气道和生育并发症较轻。